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Wireless, remotely powered telemetry in 0.25 μm CMOS

机译:0.25μmCMOS的无线远程供电遥测

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摘要

This new architecture for wireless power and data telemetry recovers power and system clock from a weak incident RF signal. An efficient RF-DC converter rectifies and multiplies the received signal, generating a practical DC voltage, far higher than the incident RF signal amplitude, increasing the range between the base station and the transponder. An injection locked LC oscillator recovers the system clock from the incident signal. Super-harmonic or sub-harmonic locking facilitates the separation of the incident and telemetry frequency without the need for a PLL. Experimental data from a 900 MHz transponder and a remotely powered 2.3 GHz wireless temperature sensor are presented. Both prototypes, implemented in 0.25 μm CMOS, occupy less that 1 mm2.
机译:这种用于无线电源和数据遥测的新架构可从弱入射RF信号中恢复电源和系统时钟。一个高效的RF-DC转换器对接收到的信号进行整流和倍增,产生一个实际的DC电压,该电压远高于入射的RF信号幅度,从而增加了基站与转发器之间的距离。注入锁定LC振荡器从入射信号中恢复系统时钟。超谐波或次谐波锁定无需PLL就可将入射频率与遥测频率分开。展示了来自900 MHz应答器和远程供电的2.3 GHz无线温度传感器的实验数据。两种原型均采用0.25μmCMOS实现,占用的空间小于1 mm 2

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